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Supply and demand of nutrients and dissolved organic matter at and across the NW European shelf break in relation to hydrography and biogeochemical activity

机译:与水文学和生物地球化学活动有关的欧洲西北大陆架及整个大陆架上和整个大陆的养分和溶解有机物的供求

摘要

As part of the OMEX I project, nutrient determinations were made on 17 cruises in the region of the Goban Spur and La Chapelle Bank between 46 and 51°N, in all seasons of the year, between 1993-1995. Over this period no change was detectable in the structure of the water masses below the deep winter mixed layer. The N:P (dissolved nitrate-to-phosphate) ratio changed from 16 at 100-m depth to less than 15 at 3300-m depth. At intermediate depths nutrient and oxygen data indicate the presence of Mediterranean Outflow water overlying Labrador Sea Water at its most eastern extension. Estimated maximum levels of production in the spring bloom are the total N-limited new primary production equivalent between 24 and 41 g C m-2, the equivalent maximum diatom production is 11 g C m-2. Measurements during the spring bloom suggest a conversion factor of 1 μM nitrate to 1 μg1-1 chlorophyll, at the shelf break, which is consistent with other recent measurements in European shelf seawaters. Sediment trap data suggest that 80% (5.4 g m-2) of the opal produced in the spring bloom dissolved before reaching the sediment trap at 600 m. A comparison of the winter and summer profiles for dissolved silicon suggests a similar dissolution of 9±3 g opal m-2 above 300-m depth. Measurements of dissolved organic carbon (DOC) in September 1994 show an enrichment of 7 μM-C above the seasonal thermocline relative to the winter values (52±4 μM). In winter dissolved organic nitrogen represents 40% of the pool of total dissolved nitrogen. There is no consistent evidence of an increase in the concentration of DON during summer. Measurements of nitrate in surface waters in January 1994 show that concentrations off-shelf vary with the temperature of the water and are related to the depth of winter mixing. Mixing in surface waters is discontinuous at the shelf break, demonstrating the degree to which exchange across the shelf break is limited even in winter. OMEX winter measurements of nitrate concentrations can be used to estimate the flow of water across the shelf break that would be required to maintain the nitrogen balance in the North Sea at a steady state. The estimate is 0.6 Sv (1 Sv = 106m3s- 1), which is similar to an earlier estimate of a total flow of 1.7 Sv based on salt budgets (cf. Huthnance, Deutsche Hydrographische Zeitschrift, 49 (1997) 153). © 2001 Elsevier Science Ltd. All rights reserved.
机译:作为OMEX I项目的一部分,在1993年至1995年的所有季节中,对Goban Spur和La Chapelle Bank地区在46至51°N之间的17次航行进行了营养测定。在此期间,冬季深层混合层以下的水团结构没有发现变化。 N:P(溶解的硝酸盐与磷酸盐的比率)从100-m处的16变为3300-m处的小于15。在中等深度,营养和氧气数据表明在拉布拉多海水最东端延伸的上方有地中海流出水。估计春季开花的最大产量水平是N限定的新初级生产总当量,介于24和41 g C m-2之间,硅藻的最大生产当量为11 g C m-2。春季开花期间的测量表明,在货架期,硝酸盐转化为1μM1-1叶绿素的转化因子为1μM,这与最近在欧洲货架海水中进行的其他测量一致。泥沙收集器的数据表明,春季开花的蛋白石中有80%(5.4 g m-2)在到达600 m处的泥沙收集器之前已经溶解。冬季和夏季溶解硅剖面的比较表明,在300-m深度以上有9±3 g蛋白石m-2的相似溶解。 1994年9月对溶解有机碳(DOC)的测量表明,相对于冬季温度(52±4μM),比季节性温跃层高7μM-C。在冬季,溶解的有机氮占总溶解氮总量的40%。没有一致的证据表明夏季DON的浓度增加。 1994年1月对地表水中硝酸盐的测量表明,现成的浓度随水温的变化而变化,并且与冬季融化的深度有关。在架子期,地表水的混合是不连续的,这表明即使在冬天,整个架子期的交换也受到限制。 OMEX冬季对硝酸盐浓度的测量可用于估算跨架子断裂的水流,这对于保持北海中的氮平衡处于稳定状态是必需的。估计值为0.6 Sv(1 Sv = 106m3s-1),类似于基于盐分预算的总流量1.7 Sv的早期估计(参见Huthnance,Deutsche Hydrographische Zeitschrift,49(1997)153)。 ©2001 Elsevier ScienceLtd。保留所有权利。

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